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PHD17 acts as a target of miR1320 to negatively control cold tolerance via JA-activated signaling in rice
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作者 Yan Wang Yang Shen +6 位作者 Weifeng Dong Xiaoxi Cai Junkai Yang Yue Chen Bowei Jia Mingzhe Sun Xiaoli Sun 《The Crop Journal》 SCIE CSCD 2024年第5期1447-1458,共12页
Plant Homeo Domain(PHD)proteins are involved in diverse biological processes during plant growth.However,the regulation of PHD genes on rice cold stress response remains largely unknown.Here,we reported that PHD17 neg... Plant Homeo Domain(PHD)proteins are involved in diverse biological processes during plant growth.However,the regulation of PHD genes on rice cold stress response remains largely unknown.Here,we reported that PHD17 negatively regulated cold tolerance in rice seedlings as a cleavage target of miR1320.PHD17 expression was greatly induced by cold stress,and was down-regulated by miR1320 overexpression and up-regulated by miR1320 knockdown.Through 5'RACE and dual luciferase assays,we found that miR1320 targeted and cleaved the 3'UTR region of PHD17.PHD17 was a nuclearlocalized protein and acted as a transcriptional activator in yeast.PHD17 overexpression reduced cold tolerance of rice seedlings,while knockout of PHD17 increased cold tolerance,partially via the CBF cold signaling.By combining transcriptomic and physiological analyses,we demonstrated that PHD17 modulated ROS homeostasis and flavonoid accumulation under cold stress.K-means clustering analysis revealed that differentially expressed genes in PHD17 transgenic lines were significantly enriched in the jasmonic acid(JA)biosynthesis pathway,and expression of JA biosynthesis and signaling genes was verified to be affected by PHD17.Cold stress tests applied with MeJA or IBU(JA synthesis inhibitor)further suggested the involvement of PHD17 in JA-mediated cold signaling.Taken together,our results suggest that PHD17 acts downstream of miR1320 and negatively regulates cold tolerance of rice seedlings through JA-mediated signaling pathway. 展开更多
关键词 RICE Cold tolerance PHD protein mir1320 JA signaling
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miR1320表达水平与水稻白叶枯病抗性的关联性分析 被引量:1
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作者 胡积祥 朱秀梅 +4 位作者 余超 杨凤环 王继春 张立新 陈华民 《植物保护》 CAS CSCD 北大核心 2021年第5期110-117,共8页
水稻白叶枯病是由稻黄单胞菌水稻致病变种Xanthomonas oryzae pv.oryzae(Xoo)引起的一种细菌性病害,严重影响水稻的产量和品质。miR1320是水稻与Xoo互作中重要的调控因子。本研究在接种Xoo后的0、12、24 h分别检测了10个粳稻和8个籼稻... 水稻白叶枯病是由稻黄单胞菌水稻致病变种Xanthomonas oryzae pv.oryzae(Xoo)引起的一种细菌性病害,严重影响水稻的产量和品质。miR1320是水稻与Xoo互作中重要的调控因子。本研究在接种Xoo后的0、12、24 h分别检测了10个粳稻和8个籼稻品种中miR1320的积累和4个防卫基因的转录水平,测量了各品种叶片上的病斑长度,分析了miR1320的积累和防卫基因的表达与水稻白叶枯病抗性之间的相关性。结果表明:接种Xoo后,miR1320的表达模式在不同品种中有所不同;籼稻和粳稻对白叶枯病的抗性分别与接种后24 h和12 h时miR1320的表达量呈紧密负相关;且相对于防卫基因,miR1320更能反映品种间的抗病性。因此,miR1320可应用于评估水稻品种对白叶枯病的抗性,辅助水稻抗病种质的鉴定。 展开更多
关键词 mir1320 水稻 白叶枯病 抗性 表达
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